Han Yi-Fei, Chen Wen-Qiang, Wang Hong-Bo, Yuan Ying-Xue, Wu Na-Na, Song Xiang-Zhi, Yang Lan
College of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan 410083 (P.R. China).
Chemistry. 2014 Dec 15;20(51):16980-6. doi: 10.1002/chem.201404996. Epub 2014 Oct 22.
For a complementary hydrogen-bonded complex, when every hydrogen-bond acceptor is on one side and every hydrogen-bond donor is on the other, all secondary interactions are attractive and the complex is highly stable. AAA-DDD (A=acceptor, D=donor) is considered to be the most stable among triply hydrogen-bonded sequences. The easily synthesized and further derivatized AAA-DDD system is very desirable for hydrogen-bonded functional materials. In this case, AAA and DDD, starting from 4-methoxybenzaldehyde, were synthesized with the Hantzsch pyridine synthesis and Friedländer annulation reaction. The association constant determined by fluorescence titration in chloroform at room temperature is 2.09×10(7) M(-1) . The AAA and DDD components are not coplanar, but form a V shape in the solid state. Supramolecular polymers based on AAA-DDD triply hydrogen bonded have also been developed. This work may make AAA-DDD triply hydrogen-bonded sequences easily accessible for stimuli-responsive materials.
对于一个互补的氢键复合物,当每个氢键受体都在一侧而每个氢键供体都在另一侧时,所有二级相互作用都是吸引性的,并且该复合物高度稳定。AAA-DDD(A = 受体,D = 供体)被认为是三重氢键序列中最稳定的。易于合成且可进一步衍生化的AAA-DDD体系对于氢键功能材料来说是非常理想的。在这种情况下,从4-甲氧基苯甲醛出发,通过汉茨希吡啶合成法和弗里德兰德缩合反应合成了AAA和DDD。在室温下于氯仿中通过荧光滴定法测定的缔合常数为2.09×10⁷ M⁻¹。AAA和DDD组分并非共面,而是在固态中形成V形。基于AAA-DDD三重氢键的超分子聚合物也已被开发出来。这项工作可能会使AAA-DDD三重氢键序列易于用于刺激响应材料。